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Precipitation Behavior in the Heat-Affected Zone of Boron-Added 9Cr-3W-3Co Steel During Post-Weld Heat Treatment and Creep Deformation

机译:含硼9Cr-3W-3Co钢在焊后热处理和蠕变变形过程中热影响区的析出行为

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摘要

In the previous paper, we demonstrated that the addition of boron was effective in preventing type IV failure due to suppression of grain refinement in the heat-affected zone at the peak temperature of around AC3 (AC3 HAZ). However, some fine prior austenite grains (PAGs) still remained around the coarse PAG boundaries, and these fine PAGs may affect the creep property of the welded joint. In the present study, the effect of these fine PAGs on the creep property of the boron-added 9Cr-3Co-3W steel (B steel) Ac3 HAZ is investigated. Different heat treatments are carried out on B steel base metal to form different Ac3 HAZ-simulated microstructures of coarse PAG with and without fine PAGs. Ac3 HAZ microstructure shows that a lot of M23C6 carbides are formed at the block boundary in the interior of coarse PAG. On the other hand, few M23C6 carbides are formed at the fine PAG boundaries, but a number of μ phases (W6Fe7 type) cover the boundary. The formation of μ phase retards the recovery of dislocation at the fine PAG boundary and contributes to stabilizing the microstructure in the primary and transient creep regions. The μ phase transforms to the Laves phase during creep. As the growth rate of Laves phase is higher than that of M23C6 carbides during creep, the creep strength of fine PAG boundary, which is strengthened only by Laves phase, becomes a little bit lower than the other boundaries strengthened by M23C6 carbides after long-term creep. The mismatch of creep strength between the fine PAG boundary and the matrix should be taken into account to attain an excellent long-term creep property of the B steel welded joint.
机译:在先前的论文中,我们证明了硼的添加可有效防止IV型失效,这是由于抑制了在AC3(AC3 HAZ)峰值温度下热影响区的晶粒细化。但是,在粗的PAG边界周围仍然保留了一些细小的先验奥氏体晶粒(PAG),这些细的PAG可能会影响焊接接头的蠕变性能。在本研究中,研究了这些精细的PAG对加硼的9Cr-3Co-3W钢(B钢)Ac3 HAZ的蠕变性能的影响。在B钢母材上进行不同的热处理,以形成带有或不带有细PAG的粗PAG的不同Ac3 HAZ模拟的微观结构。 Ac3 HAZ的显微组织表明,在粗PAG内部的块边界处形成了许多M23C6碳化物。另一方面,在细PAG边界上几乎没有形成M23C6碳化物,但是许多μ相(W6Fe7型)覆盖了边界。 μ相的形成阻碍了PAG精细边界处位错的恢复,并有助于稳定了初级和瞬态蠕变区域的微观结构。在蠕变期间,μ相转换为Laves相。由于在蠕变过程中Laves相的生长速率高于M23C6碳化物,因此,仅通过Laves相增强的细PAG边界的蠕变强度会比长期使用M23C6碳化物所增强的其他边界低一些。蠕变。应该考虑到细的PAG边界和基体之间的蠕变强度不匹配,以获得B钢焊接接头的优异的长期蠕变性能。

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    《Metallurgical and Materials Transactions A》 |2015年第5期|1843-1854|共12页
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    Structural Materials Unit National Institute for Materials Science">(1);

    Tianjin Pipe Corporation">(3);

    Structural Materials Unit National Institute for Materials Science">(1);

    Materials Reliability Unit National Institute for Materials Science">(2);

    Materials Reliability Unit National Institute for Materials Science">(2);

    Materials Reliability Unit National Institute for Materials Science">(2);

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